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The effect of thermal load configurations on passive chilled beam performance.

机译:热负荷配置对被动冷梁性能的影响。

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摘要

This dissertation presents the findings of a study to quantify the effect of heat source configurations on the performance of passive chilled beams. Experiments in a thermally controlled test room were conducted using thermal manikins as heat sources cooled with a 0.6 m by 2.4 m beam. The thermal manikins were arranged in a symmetric and an asymmetric configuration and tested over a range of input power to simulate a low-to-high load heat distribution of an indoor space. A computational fluid dynamics (CFD) model was developed in Star CCM+ v6.06 and used for further analysis of the flow field and to predict additional spatial arrangements of the beam, interior dimensions, and heat source configurations. The CFD model implemented a calculation for the beam cooling capacity to predict the beam performance based on the room thermal conditions.;The experimental data revealed an average reduction of 15 % in the passive beam cooling capacity for the asymmetrically configured thermal manikins compared to the symmetric arrangement. The CFD model was validated with the experimental data and predicted the asymmetric heat source beam performance reduction to be 17 %. The reduction in performance based on the heat source arrangement was found with analysis of the CFD simulations to be a result of the above-beam air velocity field. The unbalanced thermal manikin configuration generated an unbalanced flow condition at the inlet of the beam that resulted in the room air circumventing the inlet of the passive beam, as compared to the inlet velocity field of the symmetric configuration.;Additional configurations were investigated with the CFD model to include the beam position, floor area, ceiling height, and thermal manikin arrangements. The simulation results were analyzed by comparing the efficiency of beam performance using the beam cooling capacity calculation for each scenario. The predictions of additional configurations found that the efficiency increased when the beam was perpendicular to a group of heat sources and the changes in beam performance with heat source configurations was not affected by the interior dimensions of the space. However, the resulting thermal conditions in the occupied zone for the beam positions of highest efficiency may negatively impact the thermal comfort of occupants.
机译:本文提出了一项研究结果,以量化热源配置对被动冷梁性能的影响。使用热人体模型作为热源,以0.6 m x 2.4 m光束冷却,在热控测试室中进行实验。人体模型以对称和非对称的方式排列,并在一定范围的输入功率上进行了测试,以模拟室内空间从低到高负载的热量分布。在Star CCM + v6.06中开发了计算流体动力学(CFD)模型,用于进一步分析流场并预测梁的其他空间布置,内部尺寸和热源配置。 CFD模型执行了梁冷却能力的计算,以根据室内热条件预测梁性能。;实验数据显示,与对称结构相比,非对称配置的人体模型的被动梁冷却能力平均降低了15%安排。通过实验数据验证了CFD模型的有效性,并预测不对称热源束性能降低了17%。通过对CFD仿真的分析发现,基于热源布置的性能下降是光束流速度场的结果。与对称构型的入口速度场相比,不平衡的人体模型构型在梁的入口处产生了不平衡的流动条件,导致室内空气绕过了被动梁的入口。模型包括横梁位置,占地面积,天花板高度和人体模型布置。通过使用每种情况下的梁冷却能力计算比较梁性能的效率来分析仿真结果。对附加配置的预测发现,当光束垂直于一组热源时,效率会提高,并且光束性能随热源配置的变化不受空间内部尺寸的影响。但是,对于最高效率的波束位置,在占用区域中产生的热条件可能会对乘员的热舒适性产生负面影响。

著录项

  • 作者

    Nelson, Ian Carl.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Mechanical engineering.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 261 p.
  • 总页数 261
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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